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Dear Jay,</div>
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The analysis seems reasonable, but the thing stuck to my mind is using cryo-cooler and conduction cooled, is good but why MgB2 and why not NbTi (the max field you are looking for is ~3T and reasonably small bore)...?</div>
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The writeup/notes does not specify what is the requirements are (units used in the Visual graphics, x,y,z B, etc.).</div>
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Regards</div>
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Probir</div>
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<div><strong>Probir K Ghoshal</strong>, PhD.<br>
Magnet Group Leader, Experimental Nuclear Physics<br>
<em>Jefferson Lab<br>
600 Kelvin Drive, Suite #3, 55C<br>
Room #2545, Newport News, VA 23606 (USA)</em><br>
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Telephone: 757 269 6702 (office)<br>
Mobile: 518 334 3289<br>
email: ghoshal@jlab.org</div>
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<div id="divRplyFwdMsg" dir="ltr"><font face="Calibri, sans-serif" style="font-size:11pt" color="#000000"><b>From:</b> PEPPo <peppo-bounces@jlab.org> on behalf of Jay Benesch via PEPPo <peppo@jlab.org><br>
<b>Sent:</b> Tuesday, October 17, 2023 10:34 AM<br>
<b>To:</b> Kim Edwards <kindrew@jlab.org><br>
<b>Cc:</b> peppo@jlab.org <peppo@jlab.org><br>
<b>Subject:</b> [PEPPo] TN re positron solenoid</font>
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<div class="PlainText">for the repository</div>
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